Simultaneous determination of eight bioactive bakkenolides of Petasites tatewakianus Kitam by HPLC–UV

A high-performance liquid chromatography coupled with variable wavelength detection (HPLC–UV) was developed to evaluate the quality of Petasites tatewakianus Kitam through a simultaneous determination of eight bakkenolides: bakkenolide-L, bakkenolide-D, bakkenolide-B, bakkenolide-Ia, bakkenolide-VII...

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Main Authors: Jianming He, Qin Wang, Yan Wang, Ruibing Chen, Yuyang Zhang, Meili Guo
Format: Article
Language:English
Published: Elsevier 2013-09-01
Series:Acta Pharmaceutica Sinica B
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2211383513000798
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spelling doaj-fa5d9f17890444b8b6aa64f895e28edd2020-11-24T22:58:17ZengElsevierActa Pharmaceutica Sinica B2211-38352211-38432013-09-013535436010.1016/j.apsb.2013.08.003Simultaneous determination of eight bioactive bakkenolides of Petasites tatewakianus Kitam by HPLC–UVJianming HeQin WangYan WangRuibing ChenYuyang ZhangMeili GuoA high-performance liquid chromatography coupled with variable wavelength detection (HPLC–UV) was developed to evaluate the quality of Petasites tatewakianus Kitam through a simultaneous determination of eight bakkenolides: bakkenolide-L, bakkenolide-D, bakkenolide-B, bakkenolide-Ia, bakkenolide-VIIa, bakkenolide-IVa, bakkenolide-IIIa and homofukinolide. With a C18 analytical column, the eight analytes were efficiently separated using tetrahydrofuran–acetonitrile–water as the mobile phase in a constant program. The limits of detection and limits of quantitation of the method ranged 0.42–2.56 μg/mL and 1.22–8.40 μg/mL, respectively. The intra- and inter-day precisions of the method were all less than 1.83%. All the recoveries for the spiked analytes ranged 97.8%–102.4%. There were statistically significant differences among the contents of the eight bakkenolides in different parts and origins of P. tatewakianus (P<0.01). The content of total bakkenolides in rhizome was higher than that in other parts of the plant. The content of total bakkenolides in rhizome from Baishan was higher than those in other localities. The result suggested that rhizome may be the most valuable part of P. tatewakianus, and P. tatewakianus from Baishan may be the best plant resource. Our results might serve as a sound foundation for further study and application of this plant.http://www.sciencedirect.com/science/article/pii/S2211383513000798HPLC–UVBakkenolidePetasites tatewakianus KitamQuantitative determination
collection DOAJ
language English
format Article
sources DOAJ
author Jianming He
Qin Wang
Yan Wang
Ruibing Chen
Yuyang Zhang
Meili Guo
spellingShingle Jianming He
Qin Wang
Yan Wang
Ruibing Chen
Yuyang Zhang
Meili Guo
Simultaneous determination of eight bioactive bakkenolides of Petasites tatewakianus Kitam by HPLC–UV
Acta Pharmaceutica Sinica B
HPLC–UV
Bakkenolide
Petasites tatewakianus Kitam
Quantitative determination
author_facet Jianming He
Qin Wang
Yan Wang
Ruibing Chen
Yuyang Zhang
Meili Guo
author_sort Jianming He
title Simultaneous determination of eight bioactive bakkenolides of Petasites tatewakianus Kitam by HPLC–UV
title_short Simultaneous determination of eight bioactive bakkenolides of Petasites tatewakianus Kitam by HPLC–UV
title_full Simultaneous determination of eight bioactive bakkenolides of Petasites tatewakianus Kitam by HPLC–UV
title_fullStr Simultaneous determination of eight bioactive bakkenolides of Petasites tatewakianus Kitam by HPLC–UV
title_full_unstemmed Simultaneous determination of eight bioactive bakkenolides of Petasites tatewakianus Kitam by HPLC–UV
title_sort simultaneous determination of eight bioactive bakkenolides of petasites tatewakianus kitam by hplc–uv
publisher Elsevier
series Acta Pharmaceutica Sinica B
issn 2211-3835
2211-3843
publishDate 2013-09-01
description A high-performance liquid chromatography coupled with variable wavelength detection (HPLC–UV) was developed to evaluate the quality of Petasites tatewakianus Kitam through a simultaneous determination of eight bakkenolides: bakkenolide-L, bakkenolide-D, bakkenolide-B, bakkenolide-Ia, bakkenolide-VIIa, bakkenolide-IVa, bakkenolide-IIIa and homofukinolide. With a C18 analytical column, the eight analytes were efficiently separated using tetrahydrofuran–acetonitrile–water as the mobile phase in a constant program. The limits of detection and limits of quantitation of the method ranged 0.42–2.56 μg/mL and 1.22–8.40 μg/mL, respectively. The intra- and inter-day precisions of the method were all less than 1.83%. All the recoveries for the spiked analytes ranged 97.8%–102.4%. There were statistically significant differences among the contents of the eight bakkenolides in different parts and origins of P. tatewakianus (P<0.01). The content of total bakkenolides in rhizome was higher than that in other parts of the plant. The content of total bakkenolides in rhizome from Baishan was higher than those in other localities. The result suggested that rhizome may be the most valuable part of P. tatewakianus, and P. tatewakianus from Baishan may be the best plant resource. Our results might serve as a sound foundation for further study and application of this plant.
topic HPLC–UV
Bakkenolide
Petasites tatewakianus Kitam
Quantitative determination
url http://www.sciencedirect.com/science/article/pii/S2211383513000798
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